School of Medicine, Cardiff University, Cardiff, UK.
Immunocore Ltd., Abingdon, UK.
Eur J Immunol. 2019 Jul;49(7):1052-1066. doi: 10.1002/eji.201948085. Epub 2019 May 27.
The HLA-A02:01-restricted decapeptide EAAGIGILTV, derived from melanoma antigen recognized by T-cells-1 (MART-1) protein, represents one of the best-studied tumor associated T-cell epitopes, but clinical results targeting this peptide have been disappointing. This limitation may reflect the dominance of the nonapeptide, AAGIGILTV, at the melanoma cell surface. The decapeptide and nonapeptide are presented in distinct conformations by HLA-A02:01 and TCRs from clinically relevant T-cell clones recognize the nonapeptide poorly. Here, we studied the MEL5 TCR that potently recognizes the nonapeptide. The structure of the MEL5-HLA-A*02:01-AAGIGILTV complex revealed an induced fit mechanism of antigen recognition involving altered peptide-MHC anchoring. This "flexing" at the TCR-peptide-MHC interface to accommodate the peptide antigen explains previously observed incongruences in this well-studied system and has important implications for future therapeutic approaches. Finally, this study expands upon the mechanisms by which molecular plasticity can influence antigen recognition by T cells.
由 T 细胞识别的黑色素瘤抗原-1(MART-1)蛋白衍生的 HLA-A02:01 限制性十肽 EAAGIGILTV 是研究最为透彻的肿瘤相关 T 细胞表位之一,但针对该肽的临床结果却令人失望。这种局限性可能反映了九肽 AAGIGILTV 在黑色素瘤细胞表面的优势。十肽和九肽由 HLA-A02:01 以不同的构象呈递,来自临床相关 T 细胞克隆的 TCR 对九肽的识别能力较差。在这里,我们研究了能够强烈识别九肽的 MEL5 TCR。MEL5-HLA-A*02:01-AAGIGILTV 复合物的结构揭示了一种涉及改变肽-MHC 锚定的抗原识别诱导契合机制。TCR-肽-MHC 界面的这种“弯曲”以适应肽抗原,解释了在这个研究透彻的系统中之前观察到的不一致性,并对未来的治疗方法具有重要意义。最后,这项研究扩展了分子可塑性如何影响 T 细胞对抗原识别的机制。